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Short-term impacts of biochar, tillage practices, and irrigation systems on nitrate and phosphorus concentrations in subsurface drainage water

机译:生物炭,耕作实践和灌溉系统对地下排水中硝酸盐和磷浓度的短期影响

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摘要

Leaching of nitrogen (N) and phosphorus (P) from agricultural lands can cause serious environmental problems such as eutrophication. The objective of this study was to investigate the impacts of biochar application, tillage practices, and irrigation systems on nitrate and dissolved phosphorus (DP) concentrations in subsurface drainage water and grain yield of winter wheat using a strip-split plot design with 3 replications. Irrigation at three different levels (flood (Ifl), furrow (Ifu), and sprinkler (Is) systems) considered as main factor, tillage at two levels (reduced tillage (Tr) and conventional systems (Tc)) as subplot factor, and bagasse biochar at two levels (without biochar (B0) and 20?ton?ha?1 biochar (B1)) as sub-subplot factor. Polyvinyl chloride (PVC) standpipes were used in each sub-subplot to collect leachate water at 100-cm depth. The results indicated that irrigation had significant effects on yield, collected water volume (CWV), nitrate, and DP concentrations (P?
机译:来自农业土地的氮气(N)和磷(P)的浸出可能导致富营养化等严重的环境问题。本研究的目的是研究生物炭施用,耕作和灌溉系统对硝酸盐和溶解磷(DP)浓度的影响,使用带有3个复制的条带分裂绘图设计冬小麦的地下排水和冬小麦的籽粒产量。三种不同级别的灌溉(洪水(IFL),沟槽(IFU)和洒水喷水器(IFU))被认为是主要因素,两种水平的耕作(减少耕作(TR)和常规系统(TC))作为子舱因子,和Bagasse BioChar在两个级别(没有生物炭(B0)和20?吨?1个生物炭(B1))作为子集子图。将聚氯乙烯(PVC)立管用于每个子子点,以在100cm深度下收集渗滤液水。结果表明,灌溉对产率,收集的水体积(CWV),硝酸盐和DP浓度有显着影响(P?<β01)。耕作和灌溉的相互作用对于谷物产量具有重要意义(P?<?0.05)。生物炭申请仅在喷水灭火灌溉下硝酸盐浓度显着降低(P?<β05),而在洪水和沟灌系统下没有观察到显着影响。在喷洒灌溉,PVC立管中收集的总硝酸盐分别在与洪水和沟槽灌溉相比下降了37.51和34.29%。生物炭应用将收集的总硝酸盐减少16.84%,而耕作处理的差异可忽略不计(4.51%)。在42.24和38.76%的洪水和沟槽灌溉相比,洒水灌溉下收集的总DP较低。 BioChar应用将总DP减少10.84%,而与常规耕作相比,减少耕作增加了8.90%的总DP。

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